The spectral function of the closed-shell neon atom is computed by expanding the electron self-energy through a set of Faddeev equations. This method describes the coupling of single-particle degrees of freedom with correlated two-electron, two-hole, and electron-hole pairs. The excitation spectra are obtained using the random-phase approximation (RPA), rather than the Tamm-Dancoff framework employed in the third-order algebraic diagrammatic construction method. The difference between these two approaches is studied, as well as the interplay between ladder and ring diagrams in the self-energy. Satisfactory results are obtained for the ionization energies as well as the energy of the ground state with the Faddeev RPA scheme, which is also ap...
The random-phase approximation (RPA) is applied to study nondipole corrections to the angular distri...
Preliminary ab-initio applications of many-body Green's function theory to the ground state of 4He s...
The Faddeev technique is employed to study the influence of both particle-particle and particle-hole...
The spectral function of the closed-shell neon atom is computed by expanding the electron self-energ...
The Faddeev random-phase approximation is a Green's function technique that makes use of Faddeev equ...
The many body Green's function is an adequate tool to study the groundstate energy and ionization en...
The Faddeev Random Phase Approximation (FRPA) is a Green’s function method which couples collective ...
The Faddeev random phase approximation (FRPA) method is applied to calculate the ground state and io...
The accuracy of the Faddeev random phase approximation (FRPA) method is tested by evaluating total a...
We present a new extension of the random-phase approximation method: the quasiboson approximation is...
The electron propagator is calculated for a set of closed-shell atoms using GW-like self-energies th...
A graphical procedure is presented for evaluating each term in the equation satisfied by the first-o...
The Faddeev technique is employed to address the problem of describing the influence of both particl...
This Ph.D. thesis derives the equations of the Faddeev Random Phase Approximation (FRPA) and applies...
In the past decade, the random phase approximation (RPA) has emerged as a promising post-Kohn-Sham m...
The random-phase approximation (RPA) is applied to study nondipole corrections to the angular distri...
Preliminary ab-initio applications of many-body Green's function theory to the ground state of 4He s...
The Faddeev technique is employed to study the influence of both particle-particle and particle-hole...
The spectral function of the closed-shell neon atom is computed by expanding the electron self-energ...
The Faddeev random-phase approximation is a Green's function technique that makes use of Faddeev equ...
The many body Green's function is an adequate tool to study the groundstate energy and ionization en...
The Faddeev Random Phase Approximation (FRPA) is a Green’s function method which couples collective ...
The Faddeev random phase approximation (FRPA) method is applied to calculate the ground state and io...
The accuracy of the Faddeev random phase approximation (FRPA) method is tested by evaluating total a...
We present a new extension of the random-phase approximation method: the quasiboson approximation is...
The electron propagator is calculated for a set of closed-shell atoms using GW-like self-energies th...
A graphical procedure is presented for evaluating each term in the equation satisfied by the first-o...
The Faddeev technique is employed to address the problem of describing the influence of both particl...
This Ph.D. thesis derives the equations of the Faddeev Random Phase Approximation (FRPA) and applies...
In the past decade, the random phase approximation (RPA) has emerged as a promising post-Kohn-Sham m...
The random-phase approximation (RPA) is applied to study nondipole corrections to the angular distri...
Preliminary ab-initio applications of many-body Green's function theory to the ground state of 4He s...
The Faddeev technique is employed to study the influence of both particle-particle and particle-hole...